mirror of
https://github.com/mangosfour/server.git
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262 lines
8.1 KiB
C++
262 lines
8.1 KiB
C++
/*
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* extract.c -- global extracting function for all known file compressions
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* in a MPQ archive.
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*
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* Copyright (C) 2003 Maik Broemme <mbroemme@plusserver.de>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#define HAVE_LIBZ
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#ifdef HAVE_LIBZ
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#include <zlib.h>
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#endif
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#include "mpq.h"
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#include "explode.h"
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#include "huffman.h"
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#include "wave.h"
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/*
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* Support functions for PKWARE data compression library.
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*
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* Function loads data from the input buffer. Used by mpq_pkzip
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* "implode" and "explode" function as user-defined callback.
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* Returns number of bytes loaded.
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*
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* char * buf - Pointer to a buffer where to store loaded data
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* unsigned int * size - Max. number of bytes to read
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* void * param - Custom pointer, parameter of implode/explode
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*/
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static unsigned int libmpq_pkzip_read_input_data(char *buf, unsigned int *size, void *param) {
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pkzip_data *info = (pkzip_data *)param;
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unsigned int max_avail = (info->in_bytes - info->in_pos);
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unsigned int to_read = *size;
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/* Check the case when not enough data available */
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if (to_read > max_avail) {
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to_read = max_avail;
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}
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/* Load data and increment offsets */
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memcpy(buf, info->in_buf + info->in_pos, to_read);
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info->in_pos += to_read;
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return to_read;
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}
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/*
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* Support functions for PKWARE data compression library.
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*
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* Function for store output data. Used by mpq_pkzip "implode" and
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* "explode" as user-defined callback.
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*
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* char * buf - Pointer to data to be written
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* unsigned int * size - Number of bytes to write
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* void * param - Custom pointer, parameter of implode/explode
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*/
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static void libmpq_pkzip_write_output_data(char *buf, unsigned int *size, void *param) {
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pkzip_data *info = (pkzip_data *)param;
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unsigned int max_write = (info->max_out - info->out_pos);
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unsigned int to_write = *size;
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/* Check the case when not enough space in the output buffer */
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if (to_write > max_write) {
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to_write = max_write;
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}
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/* Write output data and increments offsets */
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memcpy(info->out_buf + info->out_pos, buf, to_write);
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info->out_pos += to_write;
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}
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int libmpq_pkzip_decompress(char *out_buf, int *out_length, char *in_buf, int in_length) {
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pkzip_data info; /* Data information */
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char *work_buf = (char *)malloc(LIBMPQ_PKZIP_EXP_BUFFER_SIZE); /* mpq_pkzip work buffer */
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/* Fill data information structure */
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info.in_buf = in_buf;
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info.in_pos = 0;
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info.in_bytes = in_length;
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info.out_buf = out_buf;
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info.out_pos = 0;
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info.max_out = *out_length;
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/* Do the decompression */
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libmpq_pkzip_explode(libmpq_pkzip_read_input_data, libmpq_pkzip_write_output_data, work_buf, &info);
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*out_length = info.out_pos;
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free(work_buf);
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return 0;
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}
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int libmpq_wave_decompress_mono(char *out_buf, int *out_length, char *in_buf, int in_length) {
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*out_length = libmpq_wave_decompress((unsigned char *)out_buf, *out_length, (unsigned char *)in_buf, in_length, 1);
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return 1;
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}
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int libmpq_wave_decompress_stereo(char *out_buf, int *out_length, char *in_buf, int in_length) {
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*out_length = libmpq_wave_decompress((unsigned char *)out_buf, *out_length, (unsigned char *)in_buf, in_length, 2);
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return 1;
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}
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int libmpq_zlib_decompress(char *out_buf, int *out_length, char *in_buf, int in_length) {
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#ifdef HAVE_LIBZ
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z_stream z; /* Stream information for zlib */
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int result;
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/* Fill the stream structure for zlib */
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z.next_in = (Bytef *)in_buf;
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z.avail_in = (uInt)in_length;
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z.total_in = in_length;
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z.next_out = (Bytef *)out_buf;
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z.avail_out = *out_length;
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z.total_out = 0;
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z.zalloc = NULL;
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z.zfree = NULL;
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/* Initialize the decompression structure. Storm.dll uses zlib version 1.1.3 */
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if ((result = inflateInit(&z)) == 0) {
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/* Call zlib to decompress the data */
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result = inflate(&z, Z_FINISH);
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*out_length = z.total_out;
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inflateEnd(&z);
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}
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return result;
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#else
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memset(out_buf, '0', *out_length);
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return 0;
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#endif
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}
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/*
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* Huffmann decompression routine. The in_length parameter is not used, but needs
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* to be specified due to compatibility reasons.
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*
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* 1500F5F0
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*/
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int libmpq_huff_decompress(char *out_buf, int *out_length, char *in_buf, int in_length) {
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struct huffman_tree *ht = (huffman_tree *)malloc(sizeof(struct huffman_tree));
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struct huffman_input_stream *is = (huffman_input_stream *)malloc(sizeof(struct huffman_input_stream));
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struct huffman_tree_item *hi = (huffman_tree_item *)malloc(sizeof(struct huffman_tree_item));
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memset(ht, 0, sizeof(struct huffman_tree));
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memset(is, 0, sizeof(struct huffman_input_stream));
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memset(hi, 0, sizeof(struct huffman_tree_item));
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/* Initialize input stream */
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is->bit_buf = *(unsigned long *)in_buf;
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in_buf += sizeof(unsigned long);
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is->in_buf = (unsigned char *)in_buf;
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is->bits = 32;
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/* Initialize the Huffmann tree for decompression */
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libmpq_huff_init_tree(ht, hi, LIBMPQ_HUFF_DECOMPRESS);
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*out_length = libmpq_huff_do_decompress(ht, is, (unsigned char *)out_buf, *out_length);
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free(hi);
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free(is);
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free(ht);
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return 0;
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}
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int libmpq_multi_decompress(char *out_buf, int *pout_length, char *in_buf, int in_length) {
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char *temp_buf = NULL; /* Temporary storage for decompressed data */
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char *work_buf = NULL; /* Where to store decompressed data */
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int out_length = *pout_length; /* For storage number of output bytes */
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unsigned fDecompressions1; /* Decompressions applied to the block */
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unsigned fDecompressions2; /* Just another copy of decompressions applied to the block */
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int count = 0; /* Counter for every use */
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int entries = (sizeof(dcmp_table) / sizeof(decompress_table));
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int i;
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/* If the input length is the same as output, do nothing. */
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if (in_length == out_length) {
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if (in_buf == out_buf) {
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return 1;
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}
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memcpy(out_buf, in_buf, in_length);
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return 1;
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}
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/* Get applied compression types and decrement data length */
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fDecompressions1 = fDecompressions2 = (unsigned char)*in_buf++;
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in_length--;
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/* Search decompression table type and get all types of compression */
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for (i = 0; i < entries; i++) {
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/* We have to apply this decompression? */
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if (fDecompressions1 & dcmp_table[i].mask) {
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count++;
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}
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/* Clear this flag from temporary variable. */
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fDecompressions2 &= ~dcmp_table[i].mask;
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}
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/*
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* Check if there is some method unhandled
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* (E.g. compressed by future versions)
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*/
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if (fDecompressions2 != 0) {
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printf("Unknown Compression\n");
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return 0;
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}
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/* If there is more than only one compression, we have to allocate extra buffer */
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if (count >= 2) {
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temp_buf = (char *)malloc(out_length);
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}
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/* Apply all decompressions */
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for (i = 0, count = 0; i < entries; i++) {
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/* If not used this kind of compression, skip the loop */
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if (fDecompressions1 & dcmp_table[i].mask) {
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/* If odd case, use target buffer for output, otherwise use allocated tempbuf */
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work_buf = (count++ & 1) ? temp_buf : out_buf;
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out_length = *pout_length;
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/* Decompress buffer using corresponding function */
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dcmp_table[i].decompress(work_buf, &out_length, in_buf, in_length);
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/* Move output length to src length for next compression */
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in_length = out_length;
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in_buf = work_buf;
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}
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}
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/* If output buffer is not the same like target buffer, we have to copy data */
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if (work_buf != out_buf) {
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memcpy(out_buf, in_buf, out_length);
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}
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*pout_length = out_length;
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/* Delete temporary buffer, if necessary */
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if (temp_buf != NULL) {
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free(temp_buf);
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}
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return 1;
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}
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